By Mario Tagliazucchi, Igal Szleifer

ISBN-10: 0323401821

ISBN-13: 9780323401821

ISBN-10: 0323413625

ISBN-13: 9780323413626

Chemically transformed Nanopores and Nanochannels is dedicated to chemically transformed nanopores and nanochannels, and covers the basics of shipping in chemically changed platforms, an account of the several instruction and characterization strategies of chemically transformed nanopores, their purposes, and case experiences.

The e-book is designed for fabrics and biomaterials scientists, biomedical engineers, chemists, and chemical engineers who're drawn to designing and using strategies to synthesize, adjust, represent, use, and version nanopores. The powerful chemical concentration of the ebook differentiates it from different books released on nanopores, which commonly concentration both on physics, biophysics, and nanofabrication (solid-state nanopores) or biophysics and biology (biological ion channels and pores).

  • Explains how the chemical amendment of nanopores and nanochannels can be utilized in filtration, membranes, and sensing
  • Provides complex assurance of novel man made applications
  • Focuses at the most modern advancements in nanopore and nanochannel engineering
  • Presents an account of the various practise and characterization options of chemically converted nanopores, their functions, and case studies

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Extra resources for Chemically Modified Nanopores and Nanochannels

Example text

Majumdar, A. Effects of Biological Reactions and Modifications on Conductance of Nanofluidic Channels. Nano Lett. 2005, 5, 1638À1642. 105. Harrell, C. ; Lee, S. ; Martin, C. R. Synthetic Single-Nanopore and Nanotube Membranes. Anal. Chem. 2003, 75, 6861À6867. 106. ; Albretch, T. Engineered Nanopores for Bioanalytical Applications; Elsevier, 2013. 107. Bard, A. ; Faulkner, L. R. ; John Wiley & Sons: New York, 2001. Chapter 1 • Introduction to Chemically Modified Nanochannels and Nanopores 25 108.

2011, 133, 7644À7647. 53. ; Song, Y. ; Zhu, D. , et al. Responsive Single Nanochannel. J. Am. Chem. Soc. 2010, 132, 11736À11742. 54. , et al. Bioinspired Artificial Single Ion Pump. J. Am. Chem. Soc. 2013, 135, 16102À16110. 55. Love, J. ; Estroff, L. ; Kriebel, J. ; Nuzzo, R. ; Whitesides, G. M. Self-Assembled Monolayers of Thiolates on Metals as a Form of Nanotechnology. Chem. Rev. 2005, 105, 1103À1169. 56. ; Kleebe, H. ; Ensinger, W. 4-(Dimethylamino)Pyridine as a Powerful Auxiliary Reagent in the Electroless Synthesis of Gold Nanotubes.

Charge Transport in Redox Polyelectrolyte Multilayer Films: The Dramatic Effects of Outmost Layer and Solution Ionic Strength. ChemPhysChem 2010, 11, 2957À2968. 109. Blauch, D. ; Saveant, J. M. Dynamics of Electron Hopping in Assemblies of Redox Centers. Percolation and Diffusion. J. Am. Chem. Soc. 1992, 114, 3323À3332. 110. Laviron, E. General Expression of the Linear Potential Sweep Voltammogram in the Case of Diffusionless Electrochemical Systems. J. Electroanal. Chem. 1979, 101, 19À28. 111.

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Chemically Modified Nanopores and Nanochannels by Mario Tagliazucchi, Igal Szleifer

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